AML5 |
C. elegans |
otIs355 IV; lin-15B&lin-15A(n765) X; kyIs51. Show Description
otIs355 [rab-3p(prom1)::2xNLS::TagRFP] IV. kyIs51 [odr-2b::GFP + lin-15(+)]. Pan-neuronal nuclear RFP expression. Cytoplasmic GFP expressed in the odr-2b neurons including AIZ, AIB, SIAV, AVG, RIV, ASG and IL2 neurons. Derived from parental strains QW1155 and CX3300. Reference: Nguyen JP, et al. Proc Natl Acad Sci U S A. 2016 Feb 23;113(8):E1074-81.
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AML508 |
C. elegans |
unc-31(wtf502) IV; otIs669 V; wtfIs145; wtfIs348. Show Description
wtfIs145 [rab-3p::his-24::GCaMP6s::unc-54 3' UTR + pBX]. wtfIs348 [pAS3-5xQUAS::(delta)pes-10p::AI::gur-3G::unc-54 3' UTR + pAS3-5xQUAS::(delta)pes-10p::AI::prdx-2G::unc-54 3' UTR + pAS3-rab-3p::AI::QF+GR::unc-54 3' UTR + unc-122::GFP]. Keep plates covered to avoid unnecessary exposure to light. This strain expresses a purple light-sensitive optogenetic protein system (i.e., GUR-3 and PRDX-2) in each neuron, and GFP in coelomocytes. GCaMP6s transgene allows for imaging whole-brain calcium activity with neuronal identification using NeuroPAL system. unc-31(wtf502) is a CRISPR-engineered deletion allele. See description of strain OH15262 for full description of otIs669 NeuroPAL (Neuronal Polychromatic Atlas of Landmarks) transgene (Yemini E, et al. Cell. 2021 Jan 7;184(1):272-288.e11. PMID: 33378642). Derived by out-crossing parental strain OH15262 an additional six times before incorporating other transgenes. Reference: Randi F, et al. Nature 2023 Nov;623(7986):406-414. doi: 10.1038/s41586-023-06683-4. PMID: 37914938.
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AML546 |
C. elegans |
wtfEx496. Show Description
wtfEx496 [pAS3-rig-3p::AI::gur-3G::SL2::tagRFP::unc-54 3'UTR + pAS3-rig-3p::AI::prdx-2G::SL2::tagBFP::unc-54 3'UTR]. Pick animals either BFP or RFP expression in head neurons to maintain. Keep plates covered to avoid unnecessary exposure to light. This strain expresses a purple light-sensitive optogenetic protein system (i.e., GUR-3 and PRDX-2) alongside fluorescent proteins tagBFP and tagRFP in command interneurons AVA, and nearby pharyngeal neurons I1, I4, M4, NSM using rig-3 promoter. Worms exhibit higher reversal rate on exposing to blue light (peak value ~470) compared to controls. Reference: Randi F, et al. Nature 2023 Nov;623(7986):406-414. doi: 10.1038/s41586-023-06683-4. PMID: 37914938.
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AML551 |
C. elegans |
gur-3(ok2245) X; wtfIs5. Show Description
wtfIs5 [rab-3p::NLS::GCaMP6s + rab-3p::NLS::tagRFP]. Integrated calcium indicator GCaMP6s and calcium-insensitive fluorescent protein RFP in the nuclei of all neurons in a gur-3(ok2245) mutant background. Derived from parental strain AML14 by integration of wtfEx4. Reference: Gauthey W, et al. Curr Biol. 2024 Jan 8;34(1):R14-R15. doi: 10.1016/j.cub.2023.10.043. PMID: 38194919.
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AML554 |
C. elegans |
lite-1(ce314) gur-3(ok2245) X; wtfIs5. Show Description
wtfIs5 [rab-3p::NLS::GCaMP6s + rab-3p::NLS::tagRFP]. Integrated calcium indicator GCaMP6s and calcium-insensitive fluorescent protein RFP in the nuclei of all neurons in a lite-1(ce314) gur-3(ok2245) double mutant background. Derived from parental strain AML14 by integration of wtfEx4. Reference: Gauthey W, et al. Curr Biol. 2024 Jan 8;34(1):R14-R15. doi: 10.1016/j.cub.2023.10.043. PMID: 38194919.
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AML67 |
C. elegans |
wtfIs46. Show Description
wtfIs46 [mec-4p::Chrimson::SL2::mCherry::unc-54 3'UTR]. Transgenic animals express light-gated ion channel Chrimson and mCherry in mechanosensory neurons. Reference: Liu M, et al. eLife 2018;7:e36419 DOI: 10.7554/eLife.36419.
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AML70 |
C. elegans |
lite-1(ce314) X; wtfIs5. Show Description
wtfIs5 [rab-3p::NLS::GCaMP6s + rab-3p::NLS::tagRFP]. Integrated calcium indicator GCaMP6s and calcium-insensitive fluorescent protein RFP in the nuclei of all neurons in a lite-1(ce314) mutant background. Derived from parental strain AML14 by integration of wtfEx4. Reference: Gauthey W, et al. Curr Biol. 2024 Jan 8;34(1):R14-R15. doi: 10.1016/j.cub.2023.10.043. PMID: 38194919.
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AN170 |
C. elegans |
aff-1(ty4) unc-4(e120)/mnC1 [dpy-10(e128) unc-52(e444)] II. Show Description
Heterozygotes are WT and segregate WT (heterozygotes), Unc-4 worms which are strong Egl (ty4 homozygotes), and paralyzed Dpy Uncs (mnC1 homozygotes).
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AN87 |
C. elegans |
sel-12(ty11) X. Show Description
Egl. Premature stop codon.
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ANR149 |
C. elegans |
rrf-1(pk1417) I; pkIs2386. Show Description
pkIs2386 [unc-54p::alphasynuclein::YFP + unc-119(+)]. YFP expression in the muscles. Derived by crossing parental strains NL5901 and MAH23 to produce a Parkinson's model with germline-only RNAi. unc-119 might still be present in the background, but likely lost during crossing. Reference: Snow S, et al. (2024). Neuronal CBP-1 is required for enhanced body muscle proteostasis in response to reduced translation downstream of mTOR. Frontiers in Bioscience-Landmark.
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ANR153 |
C. elegans |
rde-1(ne300) V.; neIs9 X; pkIs2386. Show Description
pkIs2386 [unc-54p::alphasynuclein::YFP + unc-119(+)]. neIs9 [myo-3::HA::rde-1 + rol-6(su1006)] X. Rollers. YFP expression in the muscles. Derived by crossing parental strains NL5901 and WM118 to produce a Parkinson's model with muscle-only RNAi. Reference: Snow S, et al. (2024). Neuronal CBP-1 is required for enhanced body muscle proteostasis in response to reduced translation downstream of mTOR. Frontiers in Bioscience-Landmark.
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ANR168 |
C. elegans |
lin-15B(n744) X; pkIs2386; uIs57. Show Description
pkIs2386 [unc-54p::alphasynuclein::YFP + unc-119(+)]. uIs57 [unc-119p::YFP + unc-119p::sid-1 + mec-6p::mec-6]. YFP expression in the muscles. Parkinson's model with hypersensitive neuronal RNAi. Reference: Snow S, et al. (2024). Neuronal CBP-1 is required for enhanced body muscle proteostasis in response to reduced translation downstream of mTOR. Frontiers in Bioscience-Landmark.
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AP36 |
C. elegans |
mep-1(ok421)/nT1 [qIs51] (IV;V). Show Description
qIs51 [myo-2p::GFP + pes-10p::GFP + F22B7.9p::GFP]. Heterozygotes are wild-type GFP+ and segregate non-GFP ok421 homozygotes, wild-type GFP+ heterozygotes, and arrested nT1[qIs51] aneuploids. Pick wild-type GFP+ and check for correct segregation of progeny to maintain. Received new stock 12/02.
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AQ866 |
C. elegans |
ser-4(ok512) III. Show Description
Y22D7AR.13. Hyperactive 5HT induced egglaying. Homozygous. Outer Left Sequence: AATTATCGGATTTAGGGCCG. Outer Right Sequence: ATGGAACGGAGCATTATTCG. Inner Left Sequence: CAACACGCAACGAATGTACC. Inner Right Sequence: TGTGAAGTTTGGGAGGCTTT. Inner primer WT PCR product: 3126. Outcrossed 5 times by Stanley Shyn. URL: http://www.celeganskoconsortium.omrf.org.
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AR1 |
C. elegans |
hcp-6(mr17) I. Show Description
15C: no phenotype. 26C: shifted as L4 or later results in 100% embryonic lethality; shifted before L4 results in Unc and Sterile animals. Intermediate phenotypes between 20-23C.
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AR10 |
C. elegans |
cysl-1(mr25) X. Show Description
Sensitive to hydrogen sulfide and hydrogen cyanide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR11 |
C. elegans |
cysl-1(mr26) X. Show Description
Sensitive to hydrogen sulfide and hydrogen cyanide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR12 |
C. elegans |
suls-1(mr27) V. Show Description
Sensitive to hydrogen sulfide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR13 |
C. elegans |
sqrd-1(mr28) IV. Show Description
Sensitive to hydrogen sulfide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR14 |
C. elegans |
cysl-1(mr29) X. Show Description
Sensitive to hydrogen sulfide and hydrogen cyanide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR15 |
C. elegans |
sqrd-1(mr30) IV. Show Description
Sensitive to hydrogen sulfide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR16 |
C. elegans |
suls-2(mr31) I. Show Description
Sensitive to hydrogen sulfide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR17 |
C. elegans |
sqrd-1(mr32) IV. Show Description
Sensitive to hydrogen sulfide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR18 |
C. elegans |
cysl-1(mr33) X. Show Description
Sensitive to hydrogen sulfide and hydrogen cyanide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR19 |
C. elegans |
cysl-1(mr34) X. Show Description
Sensitive to hydrogen sulfide and hydrogen cyanide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR2 |
C. elegans |
hcp-6(mr17) unc-73(e936) I. Show Description
Unc at all temperatures. For hcp-6: 15C: no phenotype. 26C: shifted as L4 or later results in 100% embryonic lethality; shifted before L4 results in Unc and Sterile animals. Intermediate phenotypes between 20-23C.
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AR20 |
C. elegans |
suls-1(mr35) V. Show Description
Sensitive to hydrogen sulfide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR21 |
C. elegans |
suls-2(mr36) I. Show Description
Sensitive to hydrogen sulfide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR23 |
C. elegans |
suls-1(mr38) V. Show Description
Sensitive to hydrogen sulfide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR24 |
C. elegans |
cysl-1(mr39) X. Show Description
Sensitive to hydrogen sulfide and hydrogen cyanide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR25 |
C. elegans |
cysl-1(mr40) X. Show Description
Sensitive to hydrogen sulfide and hydrogen cyanide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR3 |
C. elegans |
suls-1(mr18) V. Show Description
Sensitive to hydrogen sulfide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR4 |
C. elegans |
cysl-1(mr19) X. Show Description
Sensitive to hydrogen sulfide and hydrogen cyanide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR5 |
C. elegans |
hif-1(mr20) V. Show Description
Sensitive to hydrogen sulfide and hydrogen cyanide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR6 |
C. elegans |
sqrd-1(mr21) IV. Show Description
Sensitive to hydrogen sulfide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR7 |
C. elegans |
hif-1(mr22) V. Show Description
Sensitive to hydrogen sulfide and hydrogen cyanide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR8 |
C. elegans |
cysl-1(mr23) X. Show Description
Sensitive to hydrogen sulfide and hydrogen cyanide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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AR9 |
C. elegans |
sqrd-1(mr24) IV. Show Description
Sensitive to hydrogen sulfide. Reference: Budde MW, Roth MB. Genetics. 2011 Oct;189(2):521-32.
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ARM101 |
C. elegans |
wamSi101 V; unc-119(ed3) III. Show Description
wamSi101 [eft-3p::mTFP::unc-54 3'UTR + Cbr-unc-119(+)] V. Expresses a single copy of mTFP from eft-3 promoter; construct utilizes the unc-54 terminator and 3'UTR. Can be used as a standard for multicolor imaging and quantitative microscopy. Reference: Sands B, et al. 2018. Translational Medicine of Aging Volume 2, January 2018, Pages 110.
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ARM103 |
C. elegans |
unc-119(ed3) III; wamSi103 V. Show Description
wamSi103 [eft-3p::mKO2::unc-54 3'UTR + Cbr-unc-119(+)] V. Expresses a single copy of mKO2 from eft-3 promoter; construct utilizes the unc-54 terminator and 3'UTR. Can be used as a standard for multicolor imaging and quantitative microscopy. Reference: Sands B, et al. 2018. Translational Medicine of Aging Volume 2, January 2018, Pages 110.
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ARM112 |
C. elegans |
wamSi112 II; unc-119(ed3) III Show Description
wamSi112 [eft-3p::mScarlet::unc-54 3'UTR + Cbr-unc-119(+)] II. Expresses a single copy of mScarlet from eft-3 promoter; construct utilizes the unc-54 terminator and 3'UTR. Can be used as a standard for multicolor imaging and quantitative microscopy. Reference: Sands B, et al. 2018. Translational Medicine of Aging Volume 2, January 2018, Pages 110.
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ARM118 |
C. elegans |
wamSi118 II; unc-119(ed3) III. Show Description
wamSi118 [eft-3p::mCerulean3::unc-54 3'UTR + Cbr-unc-119(+)] II. Expresses a single copy of mCerulean3 from eft-3 promoter; construct utilizes the unc-54 terminator and 3'UTR. Can be used as a standard for multicolor imaging and quantitative microscopy. Reference: Sands B, et al. 2018. Translational Medicine of Aging Volume 2, January 2018, Pages 110.
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ARM123 |
C. elegans |
unc-119(ed3) III; wamSi123 V. Show Description
wamSi123 [eft-3p::mECitrine::unc-54 3'UTR + Cbr-unc-119 (+)] V. Expresses a single copy of mECitrine from eft-3 promoter; construct utilizes the unc-54 terminator and 3'UTR. Can be used as a standard for multicolor imaging and quantitative microscopy. Reference: Sands B, et al. 2018. Translational Medicine of Aging Volume 2, January 2018, Pages 110.
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ARM3 |
C. elegans |
wamSi3 II; unc-119(ed3) III. Show Description
wamSi3 [eft-3p::mNeptune::unc-54 3'UTR + Cbr-unc-119(+)] II. Expresses a single copy of mNeptune from eft-3 promoter; construct utilizes the unc-54 terminator and 3'UTR. Can be used as a standard for multicolor imaging and quantitative microscopy. Reference: Sands B, et al. 2018. Translational Medicine of Aging Volume 2, January 2018, Pages 110.
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ARM6 |
C. elegans |
wamSi6 II; unc-119(ed3) III. Show Description
wamSi6 [eft-3p::mTagBFP2::unc-54 3'UTR + Cbr-unc-119(+)] II. Expresses a single copy of mTagBFP2 from eft-3 promoter; construct utilizes the unc-54 terminator and 3'UTR. Can be used as a standard for multicolor imaging and quantitative microscopy. Reference: Sands B, et al. 2018. Translational Medicine of Aging Volume 2, January 2018, Pages 110.
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ARM7 |
C. elegans |
wamSi7 II; unc-119(ed3) III. Show Description
wamSi7 [eft-3p::mTagRFP-T::unc-54 3'UTR + Cbr-unc-119(+)] II. Expresses a single copy of mTagRFP-T from eft-3 promoter; construct utilizes the unc-54 terminator and 3'UTR. Can be used as a standard for multicolor imaging and quantitative microscopy. Reference: Sands B, et al. 2018. Translational Medicine of Aging Volume 2, January 2018, Pages 110.
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AS270 |
C. elegans |
gly-12(id47) X. Show Description
Phenotypically WT. F3.2 See also WBPaper00005927.
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AS271 |
C. elegans |
gly-14(id48) III. Show Description
Phenotypically WT. M8ns. See also WBPaper00005927.
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AS338 |
C. elegans |
dpy-6(e14) gly-13(ok712) X. Show Description
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AT10 |
C. elegans |
srf-3(yj10) IV. Show Description
Superficially wild-type. Antibody staining required to observe phenotype. Contains at least one extraneous mutation in the background (Eur. Worm Mtg 2006, Venuz et al.).
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